Thirty-two phase sequences design with good autocorrelation properties

被引:0
作者
S. P. Singh
K. Subba Rao
机构
[1] Mahatma Gandhi Institute of Technology (MGIT),Electronics and Communication Engineering Department
[2] College of Engineering,undefined
[3] (Osmania University),undefined
来源
Sadhana | 2010年 / 35卷
关键词
Barker codes; Hamming scan; polyphase code; radar signal design; simulated annealing;
D O I
暂无
中图分类号
学科分类号
摘要
Polyphase Barker Sequences are finite length, uniform complex sequences; the magnitude of their aperiodic autocorrelation sidelobes are bounded by 1. Such sequences have been used in numerous real-world applications such as channel estimation, radar and spread spectrum communication. In this paper, thirty-two phase Barker sequences up to length 24 with an alphabet size of only 32 are presented. The sequences from length 25 to 289 have autocorrelation properties better than well-known Frank codes. Because of the complex structure the sequences are very difficult to detect and analyse by an enemy’s electronic support measures (ESMs). The synthesized sequences are promising for practical application to radar and spread spectrum communication systems. These sequences are found using the Modified Simulated Annealing Algorithm (MSAA). The convergence rate of the algorithm is good.
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页码:63 / 73
页数:10
相关论文
共 25 条
[1]  
Bomer L.(1989)Polyphase barker sequences Electronics Letters 34 1577-1579
[2]  
Antweiler M.(1998)Polyphase barker sequences upto length 45 with small alphabets Electronics Letters 34 1576-1577
[3]  
Brenner A.R.(2009)Polyphase pulse compression codes with optimal peak and integrated sidelobes IEEE TAES 45 775-781
[4]  
Nunn C. J.(1963)Polyphase codes with good non-periodic correlation properties IEEE Trans. Inform. Theory IT-9 43-45
[5]  
Coxson G. E.(1996)Polyphase Barker sequences upto length 36 IEEE Trans. Inf. Theory IT-42 1248-1250
[6]  
Frank R. L.(1994)Polyphase Barker sequences upto length 31 Electronics Letters 30 1930-1931
[7]  
Friese M.(1965)Generalized Barker sequences IEEE Trans. Inf. Theory IT-11 533-537
[8]  
Friese M.(1983)Optimization by simulated annealing Science 220 671-680
[9]  
Zottmann H.(1996)S-K-H algorithm for signal design Electronics Letters 32 1642-1649
[10]  
Golomb S. W.(1997)Bi-parental product algorithm for coded waveform design in radar Sādhanā 22 589-599